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37. Six capacitors each of capacitance of 2uF are connected as shown in the figure. The effective capacitance between A and B is [Kerala PMT 2008] (a) 12 F (b) 8/34F (c)

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Click here:point_up_2:to get an answer to your question :writing_hand:37six capacitors each of capacitance of 2uf are connected asshown in the figure the effective
Click here👆to get an answer to your question ✍️ 37- Six capacitors each of capacitance of 2uF are connected as shown in the figure- The effective capacitance between A and B is -Kerala PMT 2008- -a- 12 F -b- 8-34F -c- 3uF -d- 6F -e- 2-3 4F Two condensers- one of capacity and the other of canacity C-2- are connected to a V-volt battery- as shown 38

2uF .12F The effective capacitance in u F in between A and B will be 1) 28/9 2uF B 2) 4 3) 5 4) 18 . . . to 15

33. Six capacitors, each of capacitance of 2uF are connected as shown in the figure. The effective capacitance between A and B is HB4 NYKYPir C C

Three capacitors C1 = 2 μF, C2 = 6 μF and C3 = 12 μF are connected as shown in figure. Find the ratio of the charges on capacitors C1, C2 and C3 respectively

3) BWV Six identical capacitors are connected as shown in figure. Capacitance of each capacitors is 5 uF. The effective capacitance between point A and B is B (1) 7.5 UF (3)

33. Six capacitors, each of capacitance of 2uF are connected as shown in the figure. The effective capacitance between A and B is HB4 NYKYPir C C

20 V A4 mt Three capacitors of capacitance 2uF.40F and F are connected in parallel and a potential ence of 12 V is applied. The charge on each h air berre GuF

Seven capacitors each of capacitance 2muF are to be connected in a con

Punjabi] Three capacitors each of capacitance of 2 muF are Connected

Six identical capacitors each of capacitance 2 uF are connected as shown below. The equivalent capacitance

7 capacitors, each with capacitance of 2uF, are to be connected in a configuration to obtain an effective capacitance of 10/11uF. What's a good combination? - Quora

Solved Two capacitors of capacitance 6.00 μF and 8.00 μF are

Three capacitors C1 = 2 μF, C2 = 6 μF and C3 = 12 μF are connected as shown in figure. Find the ratio of the charges on capacitors C1, C2 and C3 respectively

Two capacitor of 6 μ F and 12 μ F, each rated to 200 V respectively are connected in series. The maximum voltage that can be applied to the series combination of

Three capacitors of capacitances `2 muF`, `3mu F` and `6muF` are connected in series with a 12 V

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